CN209626261U - A kind of cylindrical battery double-station covering machine - Google Patents
A kind of cylindrical battery double-station covering machine Download PDFInfo
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- CN209626261U CN209626261U CN201920793432.0U CN201920793432U CN209626261U CN 209626261 U CN209626261 U CN 209626261U CN 201920793432 U CN201920793432 U CN 201920793432U CN 209626261 U CN209626261 U CN 209626261U
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- 230000007246 mechanism Effects 0.000 claims abstract description 246
- 230000005540 biological transmission Effects 0.000 claims abstract description 20
- 239000000463 material Substances 0.000 claims description 47
- 238000004080 punching Methods 0.000 claims description 37
- 238000005520 cutting process Methods 0.000 claims description 36
- 239000011248 coating agent Substances 0.000 claims description 30
- 238000000576 coating method Methods 0.000 claims description 30
- 239000002699 waste material Substances 0.000 claims description 17
- 238000003825 pressing Methods 0.000 claims description 13
- 239000011149 active material Substances 0.000 claims description 9
- 239000012774 insulation material Substances 0.000 claims description 9
- 230000005611 electricity Effects 0.000 claims description 4
- 239000007787 solid Substances 0.000 claims description 4
- 230000000903 blocking effect Effects 0.000 claims description 2
- 238000009413 insulation Methods 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 11
- 230000006698 induction Effects 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 230000000694 effects Effects 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 239000000969 carrier Substances 0.000 description 1
- 238000001816 cooling Methods 0.000 description 1
- 230000002950 deficient Effects 0.000 description 1
- 238000007599 discharging Methods 0.000 description 1
- 238000005538 encapsulation Methods 0.000 description 1
- 206010016256 fatigue Diseases 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
Classifications
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
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Abstract
The utility model discloses a kind of cylindrical battery double-station covering machines, including rack, rack is equipped with feeding mechanism, feed mechanism is disposed with along the feed direction of feeding mechanism, mantle mechanism, fill insulating trip mechanism, pyrocondensation furnace mechanism and receiving mechanism, the feeding mechanism includes the transmission chain belt for feeding, the first motor of battery carrier in transmission chain belt and driving transmission chain belt rotation is set, the mantle mechanism has two groups, and it is disposed side by side on the side of feeding mechanism, the dress insulating trip mechanism has two groups, and it is disposed side by side on the side of feeding mechanism;The utility model has automatic loading/unloading, possesses double-station mantle mechanism and double-station dress insulating trip mechanism, the advantages of to improve processing efficiency.
Description
Technical field
The utility model relates to battery technical field of processing equipment more particularly to a kind of battery covering machines.
Background technique
The cylindrical battery produced in the market after processing is completed, generally requires and carries out mantle encapsulation on its surface, then
An insulating trip on battery upper end cover, then battery is put and is toasted into oven makes coating materials heat shrinkable in battery surface,
The feeding of traditional covering machine and blanking are required to manually operate, and efficiency is relatively low, and traditional covering machine generally uses single-station
The mode of insulating trip operates battery on mantle and single-station, and process velocity is slow, further reduces efficiency.
Utility model content
The purpose of this utility model is to provide a kind of automatic loading/unloading, possesses double-station mantle mechanism and double-station dress is exhausted
Embolium mechanism, to improve the cylindrical battery double-station covering machine of processing efficiency, to solve the problems, such as proposed in background technique.
To achieve the goals above, technical solution adopted in the utility model is as follows:
A kind of cylindrical battery double-station covering machine, including rack and the feeding mechanism being arranged on the rack, the feeding
Mechanism includes the first of the transmission chain belt for feeding, the battery carrier being arranged in transmission chain belt and driving transmission chain belt rotation
Motor further includes the feed mechanism set gradually along the feed direction of transmission chain belt, mantle mechanism, dress insulating trip mechanism, heat
Suo Lu mechanism and receiving mechanism, the mantle mechanism has two groups, and is disposed side by side on the side of feeding mechanism, the dress insulating trip
Mechanism has two groups, and is disposed side by side on the side of feeding mechanism.
Further, the feed mechanism include the hopper being obliquely installed, for by the first wiper block of battery righting, will
Battery pushes the first cylinder of the first wiper block, the first delivery track to from hopper, and battery is pushed to advance along the first delivery track
Second cylinder and the third cylinder that battery is pushed to battery carrier from the first delivery track, the lower end of the hopper is provided with discharging
Mouthful, first cylinder is fixed at the discharge port side of hopper, and first wiper block is fixed at discharge port and the
Between one delivery track, second cylinder is fixed at one end of the first delivery track, the third cylinder fixed setting
In the other end of the first delivery track.
Further, the anti-jamming mechanism for preventing blocking battery is additionally provided in the hopper, the anti-jamming mechanism includes the
Two motors and prismatic spill spin block, second motor connect and spill spin block are driven to rotate above discharge port.
Further, the mantle mechanism includes guided mode bar, film placing mechanism, the guided mode machine for being oriented to coating materials
Structure, the film feeding mechanism for moving coating materials and the cutting mechanism for cutting off coating materials;
The side of guided mode bar is arranged in the film placing mechanism;
The guided mode mechanism includes at least one set of guided mode bearing group and leads template mechanism,
The guided mode bearing group includes first bearing, second bearing, 3rd bearing and fourth bearing, the first bearing and
Second bearing is located at the two sides of guided mode bar, and the 3rd bearing and fourth bearing are arranged on guided mode bar, and described first
Bearing and 3rd bearing, which cooperate, to be slided, and the second bearing and fourth bearing cooperate and slide;
The template mechanism of leading includes guided mode plate and the 7th bearing that at least two groups are symmetrically set, and the guided mode plate is solid
The lower end of cutting mechanism is set calmly, and the lower end of the guided mode bar passes through guided mode plate, and the guided mode plate is being led by 7th bearing
The lower slide of tringle;
The film feeding mechanism includes third motor, driving gear, driving shaft, drive roll, intermeshing with driving gear
Elasticity is elastic between driven gear, driven shaft and the mutually matched driven voller of drive roll and adjusting drive roll and driven voller
Regulating mechanism, the third motor connect and driving gear are driven to rotate, one end of the driving shaft and the core wheel of driving gear
It is fixedly connected, the other end is fixedly connected with the axle center of drive roll, one end of the driven shaft and the fixed company of the core wheel of driven gear
It connects, the other end is fixedly connected with the axle center of driven voller, and the drive roll and driven voller are located at the two sides of guided mode bar;
The elasticity adjusting mechanism includes that the first fixed block being fixed on driving shaft, second be fixed on driven shaft are solid
Determine block, the second guide post and stud, one end of second guide post is also cross the first fixed block and the second fixed block, and fixation is set
It sets on the second fixed block, the stud passes through the first fixed block, and is threadedly coupled with the first fixed block, one end of the stud
It is articulated on the second fixed block;
The cutting mechanism includes the 4th motor, rotating seat, the 4th cylinder, pressing plate, third sliding block, limits on third sliding block
Third confinement block, wedge, third sliding rail, tool apron and the cutter being fixed on tool apron of lower slider, the guided mode bar are worn
The axle center of rotating seat is crossed, the 4th motor is connected by belt component and rotating seat is driven to rotate, and the rotating seat passes through pressure
Plate, the 4th cylinder connect and pressing plate are driven to move up and down, and the third confinement block is fixed on rotating seat, and described
Three sliding blocks are slidably arranged between rotating seat and third confinement block, and the third sliding block is articulated with the 5th far from the side of rotating seat
Bearing, the outer ring of the 5th bearing and the lower end of pressing plate offset, and the lower end of the third sliding block is articulated with 6th bearing, described
The outer ring of 6th bearing offsets with wedge, and the wedge is fixedly connected with tool apron, and the third sliding rail is fixed at rotating seat
Lower end, the tool apron is slidably arranged on third sliding rail.
Further, the dress insulating trip mechanism includes putting Insulation Material band mechanism, punching mechanism, rewinding roller mechanism, waste material
Cutting mechanism and garbage collection box;
The side put Insulation Material and punching mechanism is set with mechanism;
The punching mechanism includes the 5th cylinder, the pierce punch being punched out to material strip and carries out to the material strip after punching
The punching formed punch of punching, the 5th cylinder connect and drive pierce punch and punching formed punch to move up and down simultaneously;
The rewinding roller mechanism includes the 5th motor, active material receiving roller and driven material receiving roller, and the 5th motor connection is simultaneously
The rotation of active material receiving roller is driven, the cylindrical surface of the driven material receiving roller and the cylindrical surface of active material receiving roller offset;
The machine for cutting waste material structure includes the 6th cylinder, the 6th fixed plate, the 6th sliding rail, the 6th cutter and cuts with the 6th
The side of rewinding roller mechanism, the 6th sliding rail and cutting cube is arranged in the cutting cube that cutter matches, the 6th fixed plate
It is fixed in the 6th fixed plate, the 6th cylinder connects and the 6th cutter is driven to move on the 6th sliding rail;
There are two the garbage collection boxes, is separately positioned on the lower section of machine for cutting waste material structure and the lower section of pierce punch.
Further, further include insulating trip hold-down mechanism, insulating trip hold-down mechanism setting in dress insulating trip mechanism and
Between pyrocondensation furnace mechanism, and it is located at the side of feeding mechanism, the insulating trip hold-down mechanism includes the 7th cylinder and hold-down head, institute
It is corresponding with battery carrier to state hold-down head, the 7th cylinder connects and hold-down head is driven to move up and down.
Further, positioning is provided with below the mantle mechanism, dress insulating trip mechanism and insulating trip hold-down mechanism
Mechanism, the positioning mechanism include the 8th cylinder, snap-gauge, the 9th cylinder and with the mutually matched follow block of snap-gauge, the snap-gauge leans on
One end of nearly follow block is provided with the groove of fixed battery, and the 8th cylinder connects and drives snap-gauge towards follow block back and forth movement,
9th cylinder connects and drives follow block towards snap-gauge back and forth movement.
Further, pyrocondensation furnace mechanism includes that the oven and driving that baking shrinks it are carried out to the coating materials on battery
The height adjustment mechanism that oven moves up and down;
The height adjustment mechanism includes the tenth cylinder, the tenth fixed frame and the tenth guide post, and the tenth fixed frame is fixed
It being arranged on the rack, the tenth guide post is fixed on the tenth fixed frame, and the oven is slidably arranged on the tenth guide post,
Tenth cylinder connects and oven is driven to slide on the tenth guide post.
Further, the receiving mechanism includes the 11st cylinder and conveying mechanism, the 11st cylinder and conveyer
Structure cooperates, and is respectively fixedly disposed at the two sides of feeding mechanism;
The conveying mechanism includes the 11st motor, the 11st carriage and the 11st conveyer belt, the 11st motor
The 11st conveyer belt is driven to rotate on the 11st carriage by belt component.
Further, the receiving mechanism further includes righting mechanism, and the righting mechanism includes the second wiper block, the 12nd
Cylinder and the 12nd track that second wiper block a side is arranged in, the 12nd cylinder and the second wiper block cooperate,
And it is respectively fixedly disposed at the two sides of the 11st conveyer belt.
The utility model has the following beneficial effects: 1. pass through setting feed mechanism and receiving mechanism, battery is served into electricity automatically
Pond carrier is processed, and is after processing is completed taken off battery from battery carrier by receiving mechanism, is replaced artificial loading and unloading,
It avoids manual operation and will appear the influences of the error-prone equal factors of fatiguability and improve production efficiency compared with artificial loading and unloading;
2. by setting Liang Zu mantle mechanism and the operation simultaneously of two assembling insulating trip mechanisms, insulating trip on single-station mantle and single-station
Mode is compared, and process velocity is improved, so that efficiency be made to be improved;3. being made after completing the process by setting righting mechanism
Battery after leaving battery carrier, be still in stand transmission state, convenient for other mechanisms carry out operation;4. by setting
The height adjustment mechanism for setting adjustable oven height can be quickly increased by height adjustment mechanism when the temperature in oven is excessively high
Oven avoids the excessively high film for baking bad battery surface of temperature, reduces fraction defective to a certain extent to make battery fast cooling;
5. collection is handled after being shredded the band-like waste material for being punched insulating trip by setting machine for cutting waste material structure, improve back
It produces effects rate.
Detailed description of the invention
Fig. 1 is the overall structure diagram of the utility model;
Fig. 2 is the partial structure diagram of the feeding mechanism of the utility model;
Fig. 3 is the structural schematic diagram of the feed mechanism of the utility model;
Fig. 4 is the structure top view of the feed mechanism of the utility model;
Fig. 5 is the structural schematic diagram of first wiper block of the utility model;
Fig. 6 is the structural schematic diagram of the mantle mechanism of the utility model;
Fig. 7 is the structural schematic diagram of the mantle mechanism of the utility model;
Fig. 8 is the structural schematic diagram of the cutting mechanism of the utility model;
Fig. 9 is the structural schematic diagram of the dress insulating trip mechanism of the utility model;
Figure 10 is the structure front view of the dress insulating trip mechanism of the utility model;
Figure 11 is the positioning mechanism of the utility model and the structural schematic diagram of pyrocondensation furnace mechanism;
Figure 12 is the structural schematic diagram of the positioning mechanism of the utility model;
Figure 13 is the structural schematic diagram of the receiving mechanism of the utility model.
Specific embodiment
The utility model is further described in following connection with figures:
A kind of cylindrical battery double-station covering machine as depicted in figs. 1 and 2, including rack 1, is arranged in rack 1
Feeding mechanism 2, the feed mechanism 3 set gradually along the feed direction of feeding mechanism 2, mantle mechanism 4, dress insulating trip mechanism 5,
Insulating trip hold-down mechanism 6, positioning mechanism 7, pyrocondensation furnace mechanism 8 and receiving mechanism 9, feeding mechanism 2 include the transmission for feeding
The first motor 23 that chain belt 21, the battery carrier 22 being arranged in transmission chain belt 21 and driving transmission chain belt 21 rotate, covering machine
Structure 4 has two groups, and is disposed side by side on the side of feeding mechanism 2, and dress insulating trip mechanism 5 has two groups, and is disposed side by side on feeder
The side of structure 2.
Feed mechanism 3 as shown in Figures 3 to 5 includes the hopper 31 being obliquely installed, for helping the first of battery righting
Positive block 32, the first cylinder 33, the first delivery track 34 that battery is pushed to the first wiper block 32 from hopper 31 push battery along the
Second cylinder 35 of one delivery track 34 advance, the third cylinder 36 that battery is pushed to battery carrier 22 from the first delivery track 34
With anti-jamming mechanism 37;The lower section of hopper 31 is provided with discharge port 311, and it is for the ease of battery from hopper 31 that hopper 31, which is obliquely installed,
Discharge port 311 is inside slided to down;The shape of first generally one cuboid of wiper block 32, is provided with from one end to the other end
Arc track 321, arc track 321 run through entire first wiper block 32, and the battery lain horizontally is pushed away from one end of arc track 321
To the other end, the state of standing can be slided to arc track 321, the structure of the second wiper block 931 below and
Act on it is identical as the first wiper block 32, behind just repeat no more the second wiper block 931;First cylinder 33 is fixed at hopper 31
311 side of discharge port, the first wiper block 32 is fixed between discharge port 311 and the first delivery track 34, the second cylinder
35 are fixed at one end of the first delivery track 34, push the battery on one's feet brought from the first wiper block 32 to first
Delivery track 34, third cylinder 36 are fixed at the other end of the first delivery track 34, by the electricity on the first delivery track 34
Battery carrier 22 is pushed in pond to, is adsorbed on the bottom of battery on battery carrier 22;
Anti-jamming mechanism 37 includes the spill spin block 372 of the second motor 371 and hexagon, and the second motor 371 is connected and driven
Spill spin block 372 rotates above discharge port 311, and battery is prevented to be blocked in discharge port 311.
Mantle mechanism 4 as shown in Figure 6 and Figure 7 includes guided mode bar 41, film placing mechanism 42, for what is be oriented to coating materials
Guided mode mechanism 43, the film feeding mechanism 44 for moving coating materials and the cutting mechanism 45 for cutting off coating materials;
The side of guided mode bar 41 is arranged in film placing mechanism 42;
Film placing mechanism 42 includes putting film wheel 421 and coating materials elasticity adjusting mechanism 448422, coating materials elasticity adjusting mechanism
448422 include that the 20th fixed frame 401, first adjusts that bearing 402, second adjusts bearing 403, third adjusts bearing 404, the
20 guide rods 405, the 20th sliding block 406, the 20th induction strip 407 and with the 20th induction strip 407 mutually matched two group
One photoelectric sensor 408, the first adjusting bearing 402, second adjusts bearing 403, third adjusts bearing 404 and puts 421 phase of film wheel
Mutually cooperation carries out putting film, moves coating materials in same plane;First, which adjusts bearing 402 and second, adjusts the difference of bearing 403
It is fixed at the top of the 20th fixed frame 401, the both ends of the 20th guide rod 405 are respectively fixedly disposed at the 20th fixed frame
401 top and bottom, the 20th sliding block 406 are slidably arranged on the 20th guide rod 405, the 20th induction strip 407 and third
It adjusts bearing 404 to be fixedly installed on the 20th sliding block 406, two group of first photoelectric sensor 408 is respectively fixedly disposed at second
The upper and lower part of ten fixed frames 401, coating materials are rolled up on putting film wheel 421, when putting film while being threaded through the first adjusting bearing
402, it second adjusts between bearing 403 and third adjusting bearing 404, coating materials is made to adjust bearing 402 and the second adjustment axis first
The sliding of 403 upper ends is held, 404 lower end of bearing is adjusted in third and slides, third adjusts bearing 404 and relies on its own weight, will be band-like
Coating materials tense;When band-like coating materials tenses, the 20th induction strip 407 moves between two group of first photoelectric sensor 408,
After coating materials is finished, the 20th sliding block 406 slides to the bottom of the 20th guide rod 405, while 401 lower part of the 20th fixed frame
First photoelectric sensor 408 senses the 20th induction strip 407, and the first photoelectric sensor 408 provides signal to other controls and sets
It is standby, prompt coating materials to be finished.
Guided mode mechanism 43 includes at least one set of guided mode bearing group and leads template mechanism,
Guided mode bearing group includes first bearing 431, second bearing 432,3rd bearing and fourth bearing, first bearing 431
The two sides of guided mode bar 41 are located at second bearing 432,3rd bearing and fourth bearing are arranged on guided mode bar 41, and first
Bearing 431 and 3rd bearing, which cooperate, to be slided, and second bearing 432 and fourth bearing cooperate and slide;
Leading template mechanism includes guided mode plate 435 and the 7th bearing 436 that at least two groups are symmetrically set, guided mode plate 435
It is fixed at the lower end of cutting mechanism 45, the lower end of guided mode bar 41 passes through guided mode plate 435, and guided mode plate 435 passes through 7th bearing
436 guided mode bar 41 lower slide;Guided mode bearing group plays good guiding role to the coating materials covered on guided mode bar 41, leads
Template mechanism plays good guiding role to the coating materials after cutting;
Film feeding mechanism 44 includes third motor 441, driving gear 442, driving shaft 443, drive roll 444 and driving gear
442 intermeshing driven gears 445, driven shaft 446 and the mutually matched driven voller 447 of drive roll 444 and adjusting drive roll
The elasticity adjusting mechanism 448 of elasticity between 444 and driven voller 447, third motor 441 connect and drive 442 turns of driving gear
Dynamic, one end of driving shaft 443 is fixedly connected with the core wheel of driving gear 442, and the axle center of the other end and drive roll 444 is fixed to be connected
It connects, one end of driven shaft 446 is fixedly connected with the core wheel of driven gear 445, and the axle center of the other end and driven voller 447 is fixed to be connected
It connects, drive roll 444 and driven voller 447 are located at the two sides of guided mode bar 41, are additionally provided with and 444 phase of drive roll on guided mode bar 41
Mutually two groups of driven bearings of two groups of active bearings of cooperation sliding and the sliding that cooperates with driven voller 447 are pushing coating materials to move
When dynamic, the scratch of coating materials is reduced;
The elasticity adjusting mechanism 448 includes the first fixed block being fixed on driving shaft 443, is fixed on driven shaft 446
On the second fixed block, the second guide post and stud, one end of second guide post is fixed also cross the first fixed block and second
Block, and be fixed on the second fixed block, the stud passes through the first fixed block, and is threadedly coupled with the first fixed block, institute
The one end for stating stud is articulated on the second fixed block, turns stud, can adjust between the first fixed block and the second fixed block away from
From to adjust the elasticity between driving shaft 443 and driven shaft 446, and then between adjusting drive roll 444 and driven voller 447
It is elastic;
Cutting mechanism 45 as shown in Figure 8 includes the 4th motor 451, rotating seat 452, the 4th cylinder 453, pressing plate 454, the
Third confinement block 456, wedge 457, third sliding rail 458, the tool apron 459 that three sliding blocks 455, limitation third sliding block 455 slide up and down
With the cutter 450 being fixed on tool apron 459, guided mode bar 41 passes through the axle center of rotating seat 452, and the 4th motor 451 passes through
Belt component connects and rotating seat 452 is driven to rotate, and rotating seat 452 passes through pressing plate 454, and the 4th cylinder 453 connects and drives pressure
Plate 454 moves up and down, and third confinement block 456 is fixed on rotating seat 452, and third sliding block 455 is slidably arranged in rotating seat
Between 452 and third confinement block 456, third sliding block 455 is articulated with 5th bearing 4551 far from the side of rotating seat 452, and the 5th
The outer ring of bearing 4551 and the lower end of pressing plate 454 offset, and the lower end of third sliding block 455 is articulated with 6th bearing 4552, wedge 457
It is fixedly connected with tool apron 459, third sliding rail 458 is fixed at the lower end of rotating seat 452, and tool apron 459 is slidably arranged in third
On sliding rail 458, the upper end of wedge 457 is provided with inclined-plane, and the upper end on inclined-plane is arranged close to guided mode bar 41,6th bearing 4552
Outer ring and the inclined-plane of wedge 457 offset;The working principle of cutting mechanism 45 are as follows: the 4th cylinder 453 drives pressing plate 454 to push, pressure
Plate 454 pushes 5th bearing 4551, and 5th bearing 4551 drives 6th bearing 4552 to push by third sliding block 455, the 6th axis
4552 are held when pressing down on the inclined-plane of wedge 457, wedge 457 is pressed into guided mode bar 41, while wedge 457 drives tool apron 459
It is moved on third sliding rail 458, keeps 450 guide tringle 41 of cutter mobile, the 4th motor 451 drives the rotation of rotating seat 452 one
Week, and then cutter 450 is driven to rotate a circle on the cylindrical surface of guided mode bar 41, coating materials is cut off, after the completion of coating materials cutting, the 4th
Cylinder 453 drives pressing plate 454 to rise, and then 6th bearing 4552 is made to leave wedge 457, the centrifugal force of tool apron 459 when rotated
Under effect, cutter 450 is driven to leave guided mode bar 41.
Dress insulating trip mechanism 5 as shown in Figure 9 include put Insulation Material band mechanism 51, punching mechanism 52, rewinding roller mechanism 53,
Machine for cutting waste material structure 54 and garbage collection box 55;
The side that punching mechanism 52 is arranged in mechanism 51 for Insulation Material is put, principle of the Insulation Material with mechanism 51 is put and puts film machine
Structure 42 is identical, and details are not described herein;
Punching mechanism 52 includes the 5th cylinder 521, the pierce punch 522 being punched out to material strip and to the material strip after punching
The punching formed punch 523 of punching is carried out, the 5th cylinder 521 is connected and driven simultaneously to be moved down on pierce punch 522 and punching formed punch 523
It is dynamic;
Rewinding roller mechanism 53 includes the 5th motor 531, active material receiving roller 532 and driven material receiving roller 533, the 5th motor 531
It connects and active material receiving roller 532 is driven to rotate, the cylindrical surface of driven material receiving roller 533 and the cylindrical surface of active material receiving roller 532 offset;
Machine for cutting waste material structure 54 as shown in Figure 10 include the 6th cylinder 541, the 6th fixed plate 542, the 6th sliding rail 543,
6th cutter 544 and the cutting cube 545 matched with the 6th cutter 544, the 6th fixed plate 542 are arranged in rewinding roller mechanism
53 side, the 6th sliding rail 543 and cutting cube 545 are fixed in the 6th fixed plate 542, and the 6th cylinder 541 connects simultaneously
The 6th cutter 544 are driven to move on the 6th sliding rail 543;
There are two garbage collection boxes 55, is separately positioned on the lower section of machine for cutting waste material structure 54 and the lower section of pierce punch 522;
Fill the working principle of insulating trip mechanism 5 are as follows: band-like insulated strip material is drawn by rewinding roller mechanism 53, from putting
Insulation Material band mechanism 51 is drawn to punching mechanism 52, and by pierce punch 522 to its punching, the waste material after punching falls into waste material receipts
Collect box 55, the insulated strip material after punching, which is towed to below punching formed punch 523, carries out punching, while punching formed punch 523 will rush
The insulating trip pressed is pressed in the upper end of battery, and the insulation sheet waste material after punching is towed to machine for cutting waste material structure 54, the 6th cutting
Knife 544 and cutting cube 545 cooperate, and shred waste material as scissors, and waste material finally falls into 544 lower section of the 6th cutter
Garbage collection box 55.
The setting of insulating trip hold-down mechanism 6 as shown in figure 11 is between dress insulating trip mechanism 5 and pyrocondensation furnace mechanism 8, and position
In the side of feeding mechanism 2, insulating trip hold-down mechanism 6 includes the 7th cylinder 61 and hold-down head 62, the lines of 62 lower end of hold-down head
It is corresponded to each other with the upper end of battery, hold-down head 62 is corresponding with battery carrier 22, and the 7th cylinder 61 connects and drives hold-down head 62
It moves up and down, insulating trip is primary in battery upper end repeated presses, it prevents from loosening.
Positioning mechanism 7 as shown in figure 12 has eight groups, is separately positioned on mantle mechanism 4, dress insulating trip mechanism 5 and insulating trip
The lower section of hold-down mechanism 6, positioning mechanism 7 include the 8th cylinder 71, snap-gauge 72, the 9th cylinder 73 and mutually matched with snap-gauge 72
Follow block 74, snap-gauge 72 are provided with the groove 721 of fixed battery close to one end of follow block 74, and the 8th cylinder 71 connects and drives snap-gauge
72 connect towards 74 back and forth movement of follow block, the 9th cylinder 73 and drive follow block 74 towards 72 back and forth movement of snap-gauge, can be by battery very
Good carries out limitation positioning, carries out operation to battery convenient for mantle mechanism 4, dress insulating trip mechanism 5 and insulating trip hold-down mechanism 6.
Pyrocondensation furnace mechanism 8 includes that the oven 81 and about 81 oven of driving that baking shrinks it are carried out to the coating materials on battery
Mobile height adjustment mechanism;
Height adjustment mechanism includes the tenth cylinder 821, the tenth fixed frame 822 and the tenth guide post 823, the tenth fixed frame 822
It is fixed in rack 1, the tenth guide post 823 is fixed on the tenth fixed frame 822, and oven 81 is slidably arranged in the tenth and leads
On column 823, the tenth cylinder 821 connects and oven 81 is driven to slide on the tenth guide post 823;
Oven 81 belongs to the prior art, and structure repeats no more, and is provided with thermocouple in oven 81, when thermocouple perceives temperature
When spending high, the tenth cylinder 821 jacks up oven 81 upwards, makes the temperature rapid decrease in oven 81, prevents from baking bad coating materials.
Receiving mechanism 9 includes the 11st cylinder 91, conveying mechanism and righting mechanism, the 11st cylinder 91 as shown in fig. 13 that
It cooperates with conveying mechanism, and is respectively fixedly disposed at the two sides of feeding mechanism 2;
Conveying mechanism includes the 11st motor 921, the 11st carriage 922 and the 11st conveyer belt 923, the 11st motor
921 drive the 11st conveyer belt 923 to rotate on the 11st carriage 922 by belt component;
Righting mechanism includes the second wiper block 931, the 12nd cylinder 932 and 931 a side of the second wiper block is arranged in
12nd track 933, the 12nd cylinder 932 and the second wiper block 931 cooperate, and are respectively fixedly disposed at the 11st conveying
With 923 two sides;
11st cylinder 91 carries out flexible work, and the battery on battery carrier 22 is pushed on the 11st carriage 922,
It is delivered between the second wiper block 931 and the 12nd cylinder 932 by the 11st carriage 922, the 12nd cylinder 932 is flexible will
Battery promotes the second wiper block 931, and the battery lain horizontally is adjusted to standing state, standing by the second wiper block 931
Battery be pushed to the 12nd track 933, next step operation is carried out to it convenient for other mechanisms.
Working principle of the utility model is: 1. batteries are fallen from the discharge port 311 of hopper 31, is pushed by the first cylinder 33
One wiper block 32, after battery is adjusted to standing state by the first wiper block 32, the second cylinder 35 pushes battery to first conveying
Track 34, third cylinder 36 push battery to battery carrier 22 from the first delivery track 34, and transmission chain belt 21 drives battery carrier
22, which carry battery, is moved to film placing mechanism 42;
2. the positioning mechanism 7 of 42 lower section of film placing mechanism clamps the battery of 41 lower section of guided mode bar, battery is made to be in guided mode bar 41
Underface, coating materials is by being sent to guided mode bar under the interaction of film placing mechanism 42, film guiding mechanism 43 and film feeding mechanism 44
41, it is cut off by cutting mechanism 45, is finally enclosed in the cylindrical surface of battery, positioning mechanism 7 unclamps battery, transmission chain belt 21
It drives battery carrier 22 to carry battery and is moved to dress insulating trip mechanism 5;
3. the positioning mechanism 7 for filling 5 lower section of insulating trip mechanism clamps the battery of 523 lower section of punching formed punch, battery is made to be in punching
The underface of piece formed punch 523, band-like insulated strip material are drawn by rewinding roller mechanism 53, are led from Insulation Material band mechanism 51 is put
Punching mechanism 52 is led to, by pierce punch 522 to its punching, the insulated strip material after punching is towed to punching formed punch 523
Lower section carries out punching, while insulating trip is pressed in the upper end of battery by punching formed punch 523, and positioning mechanism 7 unclamps battery, transmission chain belt
21 drive battery carriers 22 carry battery and are moved to insulating trip hold-down mechanism 6;
4. the positioning mechanism 7 of 6 lower section of insulating trip hold-down mechanism clamps the battery of 62 lower section of hold-down head, it is in battery and compresses
First 62 underface, the 7th cylinder 61 driving hold-down head 62 moves down, and insulating trip is primary in battery upper end repeated presses, prevents
It only loosens, positioning mechanism 7 unclamps battery, and transmission chain belt 21 drives battery carrier 22 to carry battery and is moved to pyrocondensation furnace mechanism 8;
5. thermocouple controls the temperature in oven 81, make coating materials is heated to tighten in battery surface, transmission chain belt 21 drives electricity
Pond carrier 22 carries battery and is moved to receiving mechanism 9;
6. the 11st cylinder 91 pushes over the battery on battery carrier 22 on the 11st carriage 922, pass through the 11st
Carriage 922 is delivered between the second wiper block 931 and the 12nd cylinder 932, and the 12nd cylinder 932 is flexible to promote for battery
The battery lain horizontally is adjusted to standing state by two wiper blocks 931, the second wiper block 931, and the battery of standing is squeezed
To the 12nd track 933, next step operation is carried out to it convenient for other mechanisms.
The above is not limit the technical scope of the present invention, all according to the utility model technical spirit
To any modification, equivalent variations and modification made by above embodiment, the model of the technical solution of the utility model is still fallen within
In enclosing.
Claims (10)
1. a kind of cylindrical battery double-station covering machine, including rack and the feeding mechanism being arranged on the rack, the feeder
Structure includes the first electricity of the transmission chain belt for feeding, the battery carrier that is arranged in transmission chain belt and driving transmission chain belt rotation
Machine, it is characterised in that: further include the feed mechanism set gradually along the feed direction of transmission chain belt, mantle mechanism, dress insulation
Piece mechanism, pyrocondensation furnace mechanism and receiving mechanism, the mantle mechanism has two groups, and is disposed side by side on the side of feeding mechanism, institute
Shu Zhuan insulating trip mechanism has two groups, and is disposed side by side on the side of feeding mechanism.
2. a kind of cylindrical battery double-station covering machine according to claim 1, it is characterised in that: the feed mechanism packet
Include the hopper being obliquely installed, for pushing the first of the first wiper block to from hopper by the first wiper block of battery righting, by battery
Cylinder, the first delivery track, the second cylinder for pushing battery to advance along the first delivery track and by battery from the first delivery track
Push the third cylinder of battery carrier to, the lower end of the hopper is provided with discharge port, and first cylinder is fixed at hopper
Discharge port side, first wiper block is fixed between discharge port and the first delivery track, and second cylinder is solid
One end of first delivery track is set calmly, and the third cylinder is fixed at the other end of the first delivery track.
3. a kind of cylindrical battery double-station covering machine according to claim 2, it is characterised in that: also set in the hopper
It is equipped with the anti-jamming mechanism for preventing blocking battery, the anti-jamming mechanism includes the second motor and prismatic spill spin block, and described second
Motor connects and spill spin block is driven to rotate above discharge port.
4. a kind of cylindrical battery double-station covering machine according to claim 3, it is characterised in that: mantle mechanism packet
Include guided mode bar, film placing mechanism, the guided mode mechanism for being oriented to coating materials, the film feeding mechanism for moving coating materials and for cutting
The cutting mechanism of film breakage material;
The side of guided mode bar is arranged in the film placing mechanism;
The guided mode mechanism includes at least one set of guided mode bearing group and leads template mechanism,
The guided mode bearing group includes first bearing, second bearing, 3rd bearing and fourth bearing, the first bearing and second
Bearing is located at the two sides of guided mode bar, and the 3rd bearing and fourth bearing are arranged on guided mode bar, the first bearing
It cooperates and slides with 3rd bearing, the second bearing and fourth bearing cooperate and slide;
The template mechanism of leading includes guided mode plate and the 7th bearing that at least two groups are symmetrically set, and the guided mode plate fixation is set
It sets in the lower end of cutting mechanism, the lower end of the guided mode bar passes through guided mode plate, and the guided mode plate is by 7th bearing in guided mode bar
Lower slide;
The film feeding mechanism includes third motor, driving gear, driving shaft, drive roll, intermeshing driven with driving gear
Gear, driven shaft and the mutually matched driven voller of drive roll and the elastic adjusting for adjusting elasticity between drive roll and driven voller
Mechanism, the third motor connect and driving gear are driven to rotate, and one end of the driving shaft and the core wheel of driving gear are fixed
Connection, the other end are fixedly connected with the axle center of drive roll, and one end of the driven shaft is fixedly connected with the core wheel of driven gear, separately
One end is fixedly connected with the axle center of driven voller, and the drive roll and driven voller are located at the two sides of guided mode bar;
The elasticity adjusting mechanism includes the first fixed block being fixed on driving shaft, second be fixed on driven shaft fixation
Block, the second guide post and stud, one end of second guide post are fixedly installed also cross the first fixed block and the second fixed block
On the second fixed block, the stud passes through the first fixed block, and is threadedly coupled with the first fixed block, one end pivot of the stud
It connects on the second fixed block;
The cutting mechanism includes the 4th motor, rotating seat, the 4th cylinder, pressing plate, third sliding block, limits and glide on third sliding block
Dynamic third confinement block, wedge, third sliding rail, tool apron and the cutter being fixed on tool apron, the guided mode bar pass through rotation
The axle center of swivel base, the 4th motor are connected by belt component and rotating seat are driven to rotate, and the rotating seat passes through pressing plate, institute
It states the 4th cylinder to connect and pressing plate is driven to move up and down, the third confinement block is fixed on rotating seat, and the third is sliding
Block is slidably arranged between rotating seat and third confinement block, and the third sliding block is articulated with the 5th axis far from the side of rotating seat
It holds, the outer ring of the 5th bearing and the lower end of pressing plate offset, and the lower end of the third sliding block is articulated with 6th bearing, and described
The outer ring of six bearings offsets with wedge, and the wedge is fixedly connected with tool apron, and the third sliding rail is fixed at rotating seat
Lower end, the tool apron are slidably arranged on third sliding rail.
5. a kind of cylindrical battery double-station covering machine according to claim 4, it is characterised in that: the dress insulating trip machine
Structure includes putting Insulation Material band mechanism, punching mechanism, rewinding roller mechanism, machine for cutting waste material structure and garbage collection box;
The side put Insulation Material and punching mechanism is set with mechanism;
The punching mechanism includes the 5th cylinder, the pierce punch being punched out to material strip and carries out punching to the material strip after punching
Punching formed punch, the 5th cylinder connects and drives pierce punch and punching formed punch to move up and down simultaneously;
The rewinding roller mechanism includes the 5th motor, active material receiving roller and driven material receiving roller, and the 5th motor is connected and driven
The rotation of active material receiving roller, the cylindrical surface of the driven material receiving roller and the cylindrical surface of active material receiving roller offset;
The machine for cutting waste material structure include the 6th cylinder, the 6th fixed plate, the 6th sliding rail, the 6th cutter and with the 6th cutter
The side of rewinding roller mechanism is arranged in the cutting cube matched, the 6th fixed plate, and the 6th sliding rail and cutting cube are solid
Fixed to be arranged in the 6th fixed plate, the 6th cylinder connects and the 6th cutter is driven to move on the 6th sliding rail;
There are two the garbage collection boxes, is separately positioned on the lower section of machine for cutting waste material structure and the lower section of pierce punch.
6. a kind of cylindrical battery double-station covering machine according to claim 5, it is characterised in that: further include insulating trip pressure
Tight mechanism, the insulating trip hold-down mechanism setting are located at feeding mechanism between dress insulating trip mechanism and pyrocondensation furnace mechanism
Side, the insulating trip hold-down mechanism include the 7th cylinder and hold-down head, and the hold-down head is corresponding with battery carrier, and described the
Seven cylinders connect and hold-down head are driven to move up and down.
7. a kind of cylindrical battery double-station covering machine according to claim 6, it is characterised in that: the mantle mechanism,
Be provided with positioning mechanism below dress insulating trip mechanism and insulating trip hold-down mechanism, the positioning mechanism include the 8th cylinder,
Snap-gauge, the 9th cylinder and with the mutually matched follow block of snap-gauge, the snap-gauge is provided with the recessed of fixed battery close to one end of follow block
Slot, the 8th cylinder connect and drive snap-gauge towards follow block back and forth movement, and the 9th cylinder connects and drives follow block direction
Snap-gauge back and forth movement.
8. a kind of cylindrical battery double-station covering machine according to claim 7, it is characterised in that: pyrocondensation furnace mechanism
Including carrying out the oven that baking shrinks it and the height adjustment mechanism that driving oven moves up and down to the coating materials on battery;
The height adjustment mechanism includes the tenth cylinder, the tenth fixed frame and the tenth guide post, the tenth fixed frame fixed setting
On the rack, the tenth guide post is fixed on the tenth fixed frame, and the oven is slidably arranged on the tenth guide post, described
Tenth cylinder connects and oven is driven to slide on the tenth guide post.
9. a kind of cylindrical battery double-station covering machine according to claim 8, it is characterised in that: the receiving mechanism packet
The 11st cylinder and conveying mechanism are included, the 11st cylinder and conveying mechanism cooperate, and are respectively fixedly disposed at feeding
The two sides of mechanism;
The conveying mechanism includes the 11st motor, the 11st carriage and the 11st conveyer belt, and the 11st motor passes through
Belt component drives the 11st conveyer belt to rotate on the 11st carriage.
10. a kind of cylindrical battery double-station covering machine according to claim 9, it is characterised in that: the receiving mechanism
It further include righting mechanism, the righting mechanism includes the second wiper block, the 12nd cylinder and is arranged in second wiper block a side
The 12nd track, the 12nd cylinder and the second wiper block cooperate, and are respectively fixedly disposed at the 11st conveyer belt
Two sides.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920793432.0U CN209626261U (en) | 2019-05-29 | 2019-05-29 | A kind of cylindrical battery double-station covering machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920793432.0U CN209626261U (en) | 2019-05-29 | 2019-05-29 | A kind of cylindrical battery double-station covering machine |
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| Publication Number | Publication Date |
|---|---|
| CN209626261U true CN209626261U (en) | 2019-11-12 |
Family
ID=68443300
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201920793432.0U Expired - Fee Related CN209626261U (en) | 2019-05-29 | 2019-05-29 | A kind of cylindrical battery double-station covering machine |
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| Country | Link |
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| CN (1) | CN209626261U (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114597471A (en) * | 2022-05-09 | 2022-06-07 | 深圳市誉辰智能装备股份有限公司 | Hard-shell secondary battery alternative film pasting equipment |
| CN117326154A (en) * | 2023-11-14 | 2024-01-02 | 日善电脑配件(嘉善)有限公司 | Battery film sleeving machine and film sleeving method |
-
2019
- 2019-05-29 CN CN201920793432.0U patent/CN209626261U/en not_active Expired - Fee Related
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114597471A (en) * | 2022-05-09 | 2022-06-07 | 深圳市誉辰智能装备股份有限公司 | Hard-shell secondary battery alternative film pasting equipment |
| CN114597471B (en) * | 2022-05-09 | 2022-08-02 | 深圳市誉辰智能装备股份有限公司 | Alternate filming equipment for hard shell secondary batteries |
| US12090740B2 (en) | 2022-05-09 | 2024-09-17 | Shenzhen Utimes Intelligent Equipment Co., Ltd. | Alternate film pasting devices for hard-case secondary batteries |
| CN117326154A (en) * | 2023-11-14 | 2024-01-02 | 日善电脑配件(嘉善)有限公司 | Battery film sleeving machine and film sleeving method |
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